Division of Radiology, Department of Medical Technology, Kyushu University Hospital.
Department of Molecular Imaging and Diagnosis, Graduate School of Medical Sciences, Kyushu University.
Magn Reson Med Sci. 2023 Oct 1;22(4):487-495. doi: 10.2463/mrms.mp.2021-0109. Epub 2022 Sep 1.
Amide proton transfer (APT) imaging may detect changes in tissues' pH based on the chemical exchange saturation transfer (CEST) phenomenon, and thus it may be useful for identifying the penumbra in ischemic stroke patients. We investigated the effect of saturation pulse duration and power on the APT effect in phantoms with different pH values.
Five samples were prepared from a 1:10 solution of egg-white albumin in phosphate-buffered saline at pH 6.53-7.65. The APT signal intensity (SI) was defined as asymmetry of the magnetization transfer ratio at 3.5 ppm. We measured the APT SIs in the egg-white albumin samples of different pH values with saturation pulse durations of 0.5, 1.0, 2.0, and 3.0 sec and saturation pulse powers of 0.5, 1.5, and 2.5 μT. The relative change in the APT SI in relation to the saturation duration and power at different pH values was defined as follows: (APT SI - APT SI )/APT SI. The dependence of the APT SI on pH and the relative change in the APT SI were calculated as the slope of the linear regression.
The lower the pH, the larger the relative change in the APT SI, due to the change in saturation pulse duration and power. The APT SI was highly correlated with the pH at all saturation pulse durations and powers.
The influence of saturation duration and power on the APT effect was greater at lower pH than higher pH. The combination of saturation pulse ≥ 1.0 s and power ≥ 1.5 μT was useful for the sensitive detection of changes in APT effects in the egg-white albumin samples with different pH values.
酰胺质子转移 (APT) 成像可以基于化学交换饱和转移 (CEST) 现象检测组织 pH 值的变化,因此它可能有助于识别缺血性脑卒中患者的半影区。我们研究了不同 pH 值的模型中饱和脉冲持续时间和功率对 APT 效应的影响。
我们从 pH 值为 6.53-7.65 的 1:10 卵清白蛋白磷酸盐缓冲液溶液中制备了 5 个样本。APT 信号强度 (SI) 定义为 3.5 ppm 处磁化转移比的不对称性。我们测量了不同 pH 值的卵清白蛋白样本的 APT SI,饱和脉冲持续时间为 0.5、1.0、2.0 和 3.0 秒,饱和脉冲功率为 0.5、1.5 和 2.5 μT。不同 pH 值下的 APT SI 随饱和持续时间和功率的相对变化定义为:(APT SI - APT SI )/APT SI。将 APT SI 与 pH 的依赖性以及 APT SI 的相对变化作为线性回归的斜率进行计算。
由于饱和脉冲持续时间和功率的变化,pH 值越低,APT SI 的相对变化越大。在所有饱和脉冲持续时间和功率下,APT SI 与 pH 值高度相关。
在较低 pH 值下,饱和持续时间和功率对 APT 效应的影响大于较高 pH 值。在不同 pH 值的卵清白蛋白样本中,使用≥1.0 s 的饱和脉冲和≥1.5 μT 的功率进行组合,有助于敏感检测 APT 效应的变化。